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Hippocampal neurogenesis and volume in migrating and wintering semipalmated sandpipers (Calidris pusilla)

Long distance migratory birds find their way by sensing and integrating information from a large number of cues in their environment. These cues are essential to navigate over thousands of kilometers and reach the same breeding, stopover, and wintering sites every year. The semipalmated sandpiper (C...

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Autores principales: de Morais Magalhães, Nara Gyzely, Guerreiro Diniz, Cristovam, Guerreiro Diniz, Daniel, Pereira Henrique, Ediely, Corrêa Pereira, Patrick Douglas, Matos Moraes, Isis Ananda, Damasceno de Melo, Mauro André, Sherry, David Francis, Wanderley Picanço Diniz, Cristovam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5462419/
https://www.ncbi.nlm.nih.gov/pubmed/28591201
http://dx.doi.org/10.1371/journal.pone.0179134
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author de Morais Magalhães, Nara Gyzely
Guerreiro Diniz, Cristovam
Guerreiro Diniz, Daniel
Pereira Henrique, Ediely
Corrêa Pereira, Patrick Douglas
Matos Moraes, Isis Ananda
Damasceno de Melo, Mauro André
Sherry, David Francis
Wanderley Picanço Diniz, Cristovam
author_facet de Morais Magalhães, Nara Gyzely
Guerreiro Diniz, Cristovam
Guerreiro Diniz, Daniel
Pereira Henrique, Ediely
Corrêa Pereira, Patrick Douglas
Matos Moraes, Isis Ananda
Damasceno de Melo, Mauro André
Sherry, David Francis
Wanderley Picanço Diniz, Cristovam
author_sort de Morais Magalhães, Nara Gyzely
collection PubMed
description Long distance migratory birds find their way by sensing and integrating information from a large number of cues in their environment. These cues are essential to navigate over thousands of kilometers and reach the same breeding, stopover, and wintering sites every year. The semipalmated sandpiper (Calidris pusilla) is a long-distance migrant that breeds in the arctic tundra of Canada and Alaska and winters on the northeast coast of South America. Its fall migration includes a 5,300-kilometer nonstop flight over the Atlantic Ocean. The avian hippocampus has been proposed to play a central role in the integration of multisensory spatial information for navigation. Hippocampal neurogenesis may contribute to hippocampal function and a variety of factors including cognitive activity, exercise, enrichment, diet and stress influence neurogenesis in the hippocampus. We quantified hippocampal neurogenesis and volume in adult migrating and wintering semipalmated sandpipers using stereological counts of doublecortin (DCX) immunolabeled immature neurons. We found that birds captured in the coastal region of Bragança, Brazil during the wintering period had more DCX positive neurons and larger volume in the hippocampus than individuals captured in the Bay of Fundy, Canada during fall migration. We also estimate the number of NeuN immunolabeled cells in migrating and wintering birds and found no significant differences between them. These findings suggest that, at this time window, neurogenesis just replaced neurons that might be lost during the transatlantic flight. Our findings also show that in active fall migrating birds, a lower level of adult hippocampal neurogenesis is associated with a smaller hippocampal formation. High levels of adult hippocampal neurogenesis and a larger hippocampal formation found in wintering birds may be late occurring effects of long distance migratory flight or the result of conditions the birds experienced while wintering.
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spelling pubmed-54624192017-06-22 Hippocampal neurogenesis and volume in migrating and wintering semipalmated sandpipers (Calidris pusilla) de Morais Magalhães, Nara Gyzely Guerreiro Diniz, Cristovam Guerreiro Diniz, Daniel Pereira Henrique, Ediely Corrêa Pereira, Patrick Douglas Matos Moraes, Isis Ananda Damasceno de Melo, Mauro André Sherry, David Francis Wanderley Picanço Diniz, Cristovam PLoS One Research Article Long distance migratory birds find their way by sensing and integrating information from a large number of cues in their environment. These cues are essential to navigate over thousands of kilometers and reach the same breeding, stopover, and wintering sites every year. The semipalmated sandpiper (Calidris pusilla) is a long-distance migrant that breeds in the arctic tundra of Canada and Alaska and winters on the northeast coast of South America. Its fall migration includes a 5,300-kilometer nonstop flight over the Atlantic Ocean. The avian hippocampus has been proposed to play a central role in the integration of multisensory spatial information for navigation. Hippocampal neurogenesis may contribute to hippocampal function and a variety of factors including cognitive activity, exercise, enrichment, diet and stress influence neurogenesis in the hippocampus. We quantified hippocampal neurogenesis and volume in adult migrating and wintering semipalmated sandpipers using stereological counts of doublecortin (DCX) immunolabeled immature neurons. We found that birds captured in the coastal region of Bragança, Brazil during the wintering period had more DCX positive neurons and larger volume in the hippocampus than individuals captured in the Bay of Fundy, Canada during fall migration. We also estimate the number of NeuN immunolabeled cells in migrating and wintering birds and found no significant differences between them. These findings suggest that, at this time window, neurogenesis just replaced neurons that might be lost during the transatlantic flight. Our findings also show that in active fall migrating birds, a lower level of adult hippocampal neurogenesis is associated with a smaller hippocampal formation. High levels of adult hippocampal neurogenesis and a larger hippocampal formation found in wintering birds may be late occurring effects of long distance migratory flight or the result of conditions the birds experienced while wintering. Public Library of Science 2017-06-07 /pmc/articles/PMC5462419/ /pubmed/28591201 http://dx.doi.org/10.1371/journal.pone.0179134 Text en © 2017 de Morais Magalhães et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
de Morais Magalhães, Nara Gyzely
Guerreiro Diniz, Cristovam
Guerreiro Diniz, Daniel
Pereira Henrique, Ediely
Corrêa Pereira, Patrick Douglas
Matos Moraes, Isis Ananda
Damasceno de Melo, Mauro André
Sherry, David Francis
Wanderley Picanço Diniz, Cristovam
Hippocampal neurogenesis and volume in migrating and wintering semipalmated sandpipers (Calidris pusilla)
title Hippocampal neurogenesis and volume in migrating and wintering semipalmated sandpipers (Calidris pusilla)
title_full Hippocampal neurogenesis and volume in migrating and wintering semipalmated sandpipers (Calidris pusilla)
title_fullStr Hippocampal neurogenesis and volume in migrating and wintering semipalmated sandpipers (Calidris pusilla)
title_full_unstemmed Hippocampal neurogenesis and volume in migrating and wintering semipalmated sandpipers (Calidris pusilla)
title_short Hippocampal neurogenesis and volume in migrating and wintering semipalmated sandpipers (Calidris pusilla)
title_sort hippocampal neurogenesis and volume in migrating and wintering semipalmated sandpipers (calidris pusilla)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5462419/
https://www.ncbi.nlm.nih.gov/pubmed/28591201
http://dx.doi.org/10.1371/journal.pone.0179134
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